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Kinetics and mechanistic analysis of particles decontamination from abattoir wastewater (ABW) using novel Fish Bone Chito-protein (FBC)

机译:用新型鱼骨壳蛋白(FBC)从Abattoir废水(ABW)粒子净化的动力学和机械分析

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摘要

Wastewater from slaughter houses (abattoirs) has been a problem in Nigeria. It is complex and difficult to treat. The potentials of novel Fish Bone Chito-protein (FBC) successfully extracted through de-proteinization of Fish Bone Flour (FBF) were explored for the reduction of particle load in abattoir wastewater. Extracted FBC sample was analysed via proximate analysis and instrumental characterizations viz: X-ray Fluorescence (XRF) analysis, Scanning Electron Microscopy (SEM) and Fourier Transform Infrared Spectrophotoscopic Analysis (FTIR). Influences of coagulant dosage, pH, settling time and temperature were studied. The rate of particle uptake was studied using seven kinetic models. Proximate characterization of FBC revealed that it contains 24% protein, 43% carbohydrate and other components in trace values. Before treatment, abattoir wastewater contains (563 mg/L) suspended particles in excess of the national discharge standard. 92% of the particle load was removed after the coagulation treatment with 1.5g of FBC, after 35 min at pH 2, and 40 °C. BOD removal of 58% was also obtained at the same conditions. The best kinetics model selection was done between Pseudo Second Order (PSO) and fractional power (FP) kinetic model via one way statistical mean comparison using ANOVA and turkey pairwise p-values. The ANOVA p-value for pseudo second order (0.001) was found to be ˂ 0.005 (model significance alpha value). Also, the difference between the adjusted and predicted R value (0.0018) was less than 0.2. Thus, pseudo second order described the kinetic data with precision. The mechanistic pathway analysis for the process particle uptake was governed by intra-particle diffusion and film/surface diffusion. The results summarized indicate that fish bones are no waste, FBF is good source of coagulant.
机译:来自屠宰场(Abattoirs)的废水是尼日利亚的问题。它很复杂,难以治疗。探讨了通过鱼骨粉(FBF)的脱蛋白成功提取的新型鱼骨壳蛋白(FBC)的潜力,用于减少Abattoir废水中的颗粒载荷。通过近似分析和仪器表征分析提取的FBC样品:X射线荧光(XRF)分析,扫描电子显微镜(SEM)和傅里叶变换红外分光光度分析(FTIR)。研究了凝结剂剂量,pH,沉降时间和温度的影响。使用七种动力学模型研究了粒子摄取率。 FBC的近似表征显示,它含有24%蛋白,43%的碳水化合物和痕量值的其他组分。在治疗之前,Abattoir废水含有(563 mg / L)悬浮颗粒,超过国家排放标准。在pH 2的35分钟后用1.5g FBC进行凝固处理后,除去92%的颗粒载荷。在相同的条件下也获得BOD除去58%。通过使用ANOVA和土耳其对成对P值的一种方式在伪二阶(PSO)和分数功率(FP)动力学模型之间进行最佳动力学模型选择。发现伪二阶(0.001)的ANOVA P值为˂0.005(模型意义α值)。而且,调整和预测的R值(0.0018)之间的差异小于0.2。因此,伪二次阶描述了精度的动力学数据。工艺粒子摄取的机械途径分析由颗粒内扩散和薄膜/表面扩散控制。结果总结表明鱼骨不浪费,FBF是凝结剂的好来源。

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